scholarly journals Hepatocyte Lysosomal Membrane Stabilization by Olive Leaves against Chemically Induced Hepatocellular Neoplasia in Rats

2011 ◽  
Vol 2011 ◽  
pp. 1-6 ◽  
Author(s):  
N. M. Abdel-Hamid ◽  
M. A. El-Moselhy ◽  
A. El-Baz

Extensive efforts are exerted looking for safe and effective chemotherapy for hepatocellular carcinoma (HCC). Specific and sensitive early biomarkers for HCC still in query. Present work to study proteolytic activity and lysosomal membrane integrity by hepatocarcinogen, trichloroacetic acid (TCA), in Wistar rats against aqueous olive leaf extract (AOLE).TCA showed neoplastic changes as oval- or irregular-shaped hepatocytes and transformed, vesiculated, and binucleated liver cells. The nuclei were pleomorphic and hyperchromatic. These changes were considerably reduced by AOLE. The results added, probably for the first time, that TCA-induced HCC through disruption of hepatocellular proteolytic enzymes as upregulation of papain, free cathepsin-D and nonsignificant destabilization of lysosomal membrane integrity, a prerequisite for cancer invasion and metastasis. AOLE introduced a promising therapeutic value in liver cancer, mostly through elevating lysosomal membrane integrity. The study substantiated four main points: (1) the usefulness of proteolysis and lysosomalmembrane integrity in early prediction of HCC. (2) TCA carcinogenesis is possibly mediated by lysosomal membrane destabilization, through cathepsin-D disruption, which could be reversed by AOLE administration. (3) A new strategy for management of HCC, using dietary olive leaf system may be a helpful phytotherapeutic trend. (4) A prospective study on serum proteolytic enzyme activity may introduce novel diagnostic tools.

2016 ◽  
Vol 4 (2) ◽  
pp. 174
Author(s):  
Richard Ovie ◽  
Samuel Asagba

This study seeks at investigating the separate and combined toxicities of Arsenic (As) and Cadmium (Cd) administered along food-chain. The natural food-chain was mimicked by exposing rats to diet containing milled Cd and As-exposed (at a dose of 0.4mg/100ml each) catfish as source of protein. Control groups were fed with normal formulated rat feed with non-metal contaminated fish as source of protein. The effects of Cd and As exposures were sought by determining indices of plasma and lysosomal membrane integrity in plasma and organs of the rats after three months exposure time. The results depict that Cd and As exposures in the rats led to bioaccumulation of the metals in their plasma and organs. The results gotten revealed significance (p<0.05) in gain of body weight in both Cd and As exposed rats when control is compared to them. Phosphatases’ activities (ALP and ACP) in the plasma and vital organs were also significant in the metal inoculated rats when the control is compared to them. These results explained that arsenic and cadmium forms free radicals which cause stress due to oxidation, kidney impairment and immunologic disorders.


2017 ◽  
Vol 7 (1) ◽  
Author(s):  
Peizhou Jiang ◽  
Ming Gan ◽  
Shu-Hui Yen ◽  
Pamela J. McLean ◽  
Dennis W. Dickson

Blood ◽  
2016 ◽  
Vol 128 (22) ◽  
pp. 1584-1584
Author(s):  
Stefanie Enzenmüller ◽  
Qian Sun ◽  
Klaus-Michael Debatin ◽  
Lüder-Hinrich Meyer

Abstract Although improved treatment of pediatric Acute Lymphoblastic Leukemia (ALL) has become increasingly successful with cure rates of up to 90%, leukemia reoccurrence is clearly associated with inferior prognosis. Treatment failure and resistance in leukemias are considered to involve defects in apoptosis signaling, which forms the basis for apoptogenic treatment approaches such as the use of Bcl-2 inhibitors. Identification of alternative cell death programs like lysosomal membrane permeabilization-induced cell death may provide a novel strategy for the treatment of ALL. Previous studies showed that lysosomal activity, as well as their traffic properties are greatly altered during tumorigenesis. Intralysosomal hydrolases such as cathepsin B, L and D have been implicated in cancer progression and high expression levels are generally associated with poor prognosis. Lysosomotropic agents modulating lysosomal integrity may overcome cell death resistance and might therefore also improve the outcome of high risk or ALL relapse patients. In this study, we investigated the efficacy of the lysosomotropic compound B10, a derivative of Betulinic acid, as well as its combination with the Bcl-2 inhibitor ABT-263 in B-cell precursor- (BCP-) ALL. In BCP-ALL cell lines, B10 showed induction of cell death combined with increased DNA fragmentation. Interestingly, additional treatment with the pan-caspase inhibitor zVAD.fmk only partially rescued B10 triggered loss of cell viability, indicating that B10 is not exclusively inducing caspase-dependent apoptosis, but also induces an additional alternative cell death program. B10 permeabilized lysosomes as indicated by the significant decrease of LysotrackerRED positive populations detected by flow cytometry, and treatment with E-64d, a potent inhibitor of thiol proteases and cathepsins, reduced B10-induced cell death, thus emphasizing the cathepsin-dependent effect of B10. To exclude that B10-induced lysosomal permeabilization might represent a secondary effect, a panel of different substances was tested for their activity on lysosomal membrane integrity. While treatment with dexamethasone, chloroquine, vincristine and asparaginase also showed lysosomal permeabilization, co-treatment with E-64d did not reduce cell death indicating a secondary effect of these compounds on lysosomes. In addition to cell lines, we tested the effect of B10 on 15 primary leukemia samples isolated from ALL bearing mice of established patient-derived NOD/SCID/hu BCP-ALL xenografts. In a majority of these individual patient-derived leukemias, B10 induced cell death that could be inhibited by E-64d, thus demonstrating a lysosomal protease-dependent death program also in primary ALL. In addition to its classical role in triggering the intrinsic mitochondria dependent apoptosis pathway, the pro-apoptotic Bcl-2 family member Bax was previously described to be involved in the regulation of lysosomal membrane integrity, pointing to a possible synergistic effect of B10 and BH3-mimetics. Intriguingly, in cell fractionation assays we observed increased Bax recruitment to lysosomal membranes when B10 is present. Interestingly, co-treatment with the Bcl-2 inhibitor ABT-263, which displaces Bcl-2 from its inhibitory binding to Bax, led to increased lysosomal permeabilization, loss of mitochondrial membrane potential, and caspase activation indicating involvement of the intrinsic apoptosis pathway. The importance of lysosomal Bax recruitment for the activity of ABT-263 and its concomitant effect on lysosomal membrane permeabilization was further supported by Bax knockdown experiments, since induction of lysosomal disruption, release of cathepsins and their subsequent effect on cell death activation by B10 was reduced. Taken together, our findings suggest an important role of lysosomal membrane permeabilization-induced cell death for the activity of Bcl-2 inhibitors such as ABT-263. The combination of BH3 mimetics with lysosomotropic compounds may provide the basis for novel molecular directed treatment strategies. Disclosures No relevant conflicts of interest to declare.


2012 ◽  
Vol 53 (4) ◽  
pp. 779-786 ◽  
Author(s):  
Rabea Asleh ◽  
Farid M. Nakhoul ◽  
Rachel Miller-Lotan ◽  
Hoda Awad ◽  
Dan Farbstein ◽  
...  

1977 ◽  
Vol 232 (4) ◽  
pp. E423
Author(s):  
B F Sloane ◽  
J W Bird

The activities of the lysosomal acid hydrolases-cathespin D, acid phosphatase, beta-N-acetylglucosaminidase, and beta-glucuronidase-were measured in rat myometrium under the following hormonal conditions: during the estrus stage of the estrous cycle (NE); at 1,2, and 3 wk after ovariectomy; and in 3-wk postovariectomized females after hormone replacement therapy with 17 beta-estradiol (E2), progesterone (P), or E2 + P. Activities per milligram protein and per milligram DNA of the enzymes were significantly decreased after ovariectomy and were restored to the NE level or above after injecting E2 or E2 + P. Lysosomal enzyme activities did not change with hormonal state in hypophysectomized rats, suggesting that other hormones are required for mediation of enzyme activity. Acid hydrolase activities in other tissues and nonlysosomal enzyme activites in the myometrium did not fluctuate with hormonal state. Studies of lysosomal membrane integrity suggested that one population of lysosomes richer in cathepsin D and acid phosphatase and another rich in beta-N-acetylglucosaminidase and beta-glucuronidase may be present in rat myometrium. Estrogen seemed to labilize the lysosomal membrane of at least the latter of the two proposed populations of myometrial lysosomes.


Sign in / Sign up

Export Citation Format

Share Document